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首页> 外文期刊>実験力学 >Computational Mixing Time of Self-Induced Rotary Sloshing Caused by an Upward Liquid Jet in a Cylindrical Container
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Computational Mixing Time of Self-Induced Rotary Sloshing Caused by an Upward Liquid Jet in a Cylindrical Container

机译:通过圆柱形容器中的向上液体射流引起的自诱导旋转晃动的计算混合时间

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摘要

This paper attempts to seek the possibility for computationally estimate the mixing time of jet-induced rotary sloshing against the previous experimental result. Simulation technique employed in this study indudes Computational Fluid Dynamics (CFD). Results for occurrence process and the period of the sloshing are successfully verified against our previous results. A lot of solid particles are then injected into the container as a tracer and tracked every time step for estimating the mixing time computationally. The particles injected move in the bath due to the hydrodynamic force, the added-mass force, the buoyancy force and the own weight, and the positions of the particles can be updated by solving the equation of motion of the particles with the use of a one-way coupling. For a low flow-rate condition of the inlet jet, the resulting computational mixing time is in agreement with the experimental result, introducing a short-time average of the particle dispersion ratio that successfully removes high frequency components in the signals.
机译:本文试图寻求计算估计喷射引起的旋转晃动的混合时间与先前的实验结果的可能性。本研究中采用的仿真技术缺乏计算流体动力学(CFD)。发生过程的结果和晃动期间成功验证了我们以前的结果。然后将大量固体颗粒作为示踪剂注入容器中,并在计算上跟踪每次步骤以计算地估计混合时间。由于流体动力力,增加的质量力,浮力和自身重量,通过求解颗粒的运动的方程,可以更新颗粒的颗粒在浴中移动在浴中。通过使用颗粒的运动方程,可以更新颗粒的方程单向耦合。对于入口射流的低流量条件,所得到的计算混合时间与实验结果一致,引入了成功消除信号中的高频分量的粒子色散比的短时间平均值。

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